典型文献
                Direct and Indirect Electro-Oxidative Intramolecular C–H Aminations
            文献摘要:
                    The ubiquity of N-heterocycles in marketed drugs makes the development of metal-free methodologies for constructing C– N bonds of considerable importance. As an environmentally friendly method, electro-oxidative intramolecular C– H amination has emerged as a powerful platform for synthesizing nitrogen-containing heterocycles under metal- and external oxidant-free conditions. In this minireview, the main achievements in this direction since 2020 are summarized, with an emphasis on the substrate scope and mechanistic aspects. The reactions are classified into two categories: direct and indirect electro-oxidative intramolecular C– H aminations.
                文献关键词:
                    
                中图分类号:
                    作者姓名:
                    
                        Huiqiao Wang;Kun Xu
                    
                作者机构:
                    School of Chemical and Environmental Engineering,Anyang Institute of Technology,Anyang 455099,China;Faculty of Environment and Life,Beijing University of Technology,Beijing 100124,China
                文献出处:
                    
                引用格式:
                    
                        [1]Huiqiao Wang;Kun Xu-.Direct and Indirect Electro-Oxidative Intramolecular C–H Aminations)[J].天津大学学报(英文版),2022(06):469-481
                    
                A类:
                Aminations,ubiquity,aminations
                B类:
                    Direct,Indirect,Electro,Oxidative,Intramolecular,heterocycles,marketed,drugs,makes,development,metal,free,methodologies,constructing,bonds,considerable,importance,environmentally,friendly,electro,oxidative,intramolecular,emerged,powerful,platform,synthesizing,nitrogen,containing,under,external,oxidant,conditions,this,minireview,main,achievements,direction,since,are,summarized,emphasis,substrate,scope,mechanistic,aspects,reactions,classified,into,two,categories,indirect
                AB值:
                    0.650318
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